Updated
Updated · Tech Times · Jul 16
Oslo Physicists Predict Infinite Photon States From 1 Mirror Removed Mid-Reflection
Updated
Updated · Tech Times · Jul 16

Oslo Physicists Predict Infinite Photon States From 1 Mirror Removed Mid-Reflection

1 articles · Updated · Tech Times · Jul 16

Summary

  • A July 15 Physical Review Letters paper says removing a perfect mirror while 1 photon is still reflecting creates a quantum state spanning 0 to infinitely many photons, not two split photon fragments.
  • The team found that an instantaneous boundary change forces the electromagnetic field to reconnect through a Bogoliubov transformation, generating unbounded high-frequency components and a logarithmically divergent expected photon count.
  • Real experiments would avoid that infinity: any finite switching time regularizes the effect, leaving a small but potentially detectable excess of photons above the classical expectation.
  • Locally, the state still looks ordinary — a single photon on one side of the transition region and vacuum on the other — while its global structure carries the full quantum strangeness.
  • The result extends the dynamic Casimir effect beyond vacuum-only setups and points to superconducting-circuit tests, using tools first demonstrated in 2011 and mathematically linked to Hawking-radiation models.

Insights

Could this bizarre truncated photon effect finally allow scientists to simulate black hole radiation directly on a laboratory microchip?
If removing a mirror spawns new photons from the vacuum, where does the sudden burst of extra energy actually come from?
If a photon's identity depends on its surroundings, is the fundamental building block of light merely an illusion created by boundaries?